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Enhancement of the Conductivity and Uniformity of Silver Nanowire Flexible Transparent Conductive Films by Femtosecond Laser-Induced Nanowelding

机译:飞秒激光诱导纳米焊接提高银纳米线柔性透明导电膜的电导率和均匀性

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摘要

In order to improve the performance of silver nanowire (AgNW) flexible transparent conductive films (FTCFs), including the conductivity, uniformity, and reliability, the welding of high repetition rate femtosecond (fs) laser is applied in this work. Fs laser irradiation can produce local enhancement of electric field, which induce melting at the gap of the AgNWs and enhance electrical conductivity of nanowire networks. The overall resistivity of the laser-welded AgNW FTCFs reduced significantly and the transparency changed slightly. Meanwhile, PET substrates were not damaged during the laser welding procedure in particular parameters. The AgNW FTCFs can achieve a nonuniformity factor of the sheet resistance as 4.6% at an average sheet resistance of 16.1 Ω/sq and transmittance of 91%. The laser-welded AgNW FTCFs also exhibited excellent reliability against mechanical bending over 10,000 cycles. The welding process may open up a new approach for improvement of FTCFs photoelectric property and can be applied in the fabrication of silver nanostructures for flexible optoelectronic and integration of functional devices.
机译:为了提高银纳米线(AgNW)柔性透明导电膜(FTCF)的性能,包括导电性,均匀性和可靠性,在这项工作中采用了高重复频率飞秒(fs)激光焊接。 Fs激光辐照可以产生电场的局部增强,从而在AgNWs的间隙诱导熔化并增强纳米线网络的电导率。激光焊接的AgNW FTCF的整体电阻率显着降低,透明度略有变化。同时,在激光焊接过程中,特定的参数不会损坏PET基材。 AgNW FTCF在平均薄层电阻为16.1Ω/ sq和透射率为91%时,可实现4.6%的薄层电阻不均匀性。激光焊接的AgNW FTCF还表现出出色的可靠性,可抵抗10,000次以上的机械弯曲。焊接工艺可能会为改善FTCF的光电性能开辟新的途径,并可用于制造用于柔性光电和功能器件集成的银纳米结构。

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